Publication | Closed Access
A method for enforcing integrability in shape from shading algorithms
1K
Citations
14
References
1988
Year
Numerical AnalysisEngineeringGeometryShape AnalysisComputer-aided DesignSubdivision SurfaceComputational ImagingDeformation ModelingComputational GeometryShape RepresentationGeometry ProcessingGeometric ModelingGeometric Feature ModelingComputational DesignComputer ScienceInverse ProblemsIntegrability Projection ConstraintExperimental ResultsNatural SciencesMesh ReductionInpaintingSurface ModelingSurface SlopesShape Modeling
An approach for enforcing integrability, a particular implementation of the approach, an example of its application to extending an existing shape-from-shading algorithm, and experimental results showing the improvement that results from enforcing integrability are presented. A possibly nonintegrable estimate of surface slopes is represented by a finite set of basis functions, and integrability is enforced by calculating the orthogonal projection onto a vector subspace spanning the set of integrable slopes. The integrability projection constraint was applied to extending an iterative shape-from-shading algorithm of M.J. Brooks and B.K.P. Horn (1985). Experimental results show that the extended algorithm converges faster and with less error than the original version. Good surface reconstructions were obtained with and without known boundary conditions and for fairly complicated surfaces.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
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